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Proceedings. Biological Sciences|October 3, 2019
Theory predicts plants grow roots to compete with only their closest neighboursCaroline E FarriorGlobal Change Biology|November 14, 2014
Increased forest carbon storage with increased atmospheric CO2 despite nitrogen limitation: a game-theoretic allocation model for trees in competition for nitrogen and lightRay Dybzinski, Caroline E Farrior, Stephen W PacalaEcology and Evolution|September 15, 2021
The early life of a leaf-cutter ant colony constrains symbiont vertical transmission and favors horizontal transmissionZachary I Phillips, Luke Reding, Caroline E FarriorPlos One|July 26, 2023
Life history, nest longevity, sex ratio, and nest architecture of the fungus-growing ant Mycetosoritis hartmanni (Formicidae: Attina)Ulrich G Mueller, Anna G Himler, Caroline E FarriorGlobal Change Biology|October 27, 2016
Predicting vegetation type through physiological and environmental interactions with leaf traits: evergreen and deciduous forests in an earth system modeling frameworkEnsheng Weng, Caroline E Farrior, Ray Dybzinski, et al.The New Phytologist|June 7, 2013
Interspecific vs intraspecific patterns in leaf nitrogen of forest trees across nitrogen availability gradientsRay Dybzinski, Caroline E Farrior, Scott Ollinger, et al.The American Naturalist|March 2, 2013
Competition for water and light in closed-canopy forests: a tractable model of carbon allocation with implications for carbon sinksCaroline E Farrior, Ray Dybzinski, Simon A Levin, et al.Ecology|September 8, 2021
Predator complementarity dampens variability of phytoplankton biomass in a diversity-stability trophic cascadeChase J Rakowski, Caroline E Farrior, Schonna R Manning, et al.The New Phytologist|September 21, 2019
Optimal stomatal drought response shaped by competition for water and hydraulic risk can explain plant trait covariationYaojie Lu, Remko A Duursma, Caroline E Farrior, et al.Proceedings of the National Academy of Sciences of the United States of America|June 4, 2015
Decreased water limitation under elevated CO2 amplifies potential for forest carbon sinksCaroline E Farrior, Ignacio Rodriguez-Iturbe, Ray Dybzinski, et al.Pageof 2